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Mice

Drd1-2A-CreERT2

Strain Name:C57BL/6Smoc-Drd1em1(2A-CreERT2-WPRE-pA)Smoc
Strain State:Embryo cryopreservation | Cat. NO.:NM-KI-18016

A 2A-CreERT2-WPRE-pA coexpression cassette is inserted befor the stop codon of mouse Drd1 gene via homologous recombination to establish a tamoxifen inducible Drd1-CreERT2 tool stain. This strain can be used to knockout target gene in Drd1+ cells after tamoxifen treatment when crossed with mice which carry loxp sites flanking target gene.

Mice

Lyz2-2A-CreERT2

Strain Name:C57BL/6Smoc-Lyz2em1(2A-CreERT2-WPRE-pA)Smoc
Strain State:Repository Live | Cat. NO.:NM-KI-18018

A 2A-CreERT2-WPRE-pA coexpression cassette is inserted befor the stop codon of mouse Lyz2 gene via homologous recombination to establish a tamoxifen inducible Lyz2-CreERT2 tool stain. This strain can be used to knockout target gene in Lyz2+ cells after tamoxifen treatment when crossed with mice which carry loxp sites flanking target gene.

Mice

Cyp2e1-DreERT2

Strain Name:C57BL/6Smoc-Cyp2e1em1(DreERT2)Smoc
Strain State:Embryo cryopreservation | Cat. NO.:NM-KI-18010

A 2A-DreERT2-wpre-polyA coexpression cassette is inserted before the stop codon of mouse Cyp2e1 gene via homologous recombination to establish a Cyp2e1-DreERT2 recombinase tool stain. This strain can be used to knockout target gene in Cyp2e1+ cells afte

Mice

R26-CAG-LSL-mCherry-EGFP-LC3

Strain Name:C57BL/6Smoc-Gt(ROSA)26Sorem1(CAG-LSL-mCherry-EGFP-Map1lc3a-pA)Smoc
Strain State:Repository Live | Cat. NO.:NM-KI-00124

The CAG promoter-loxp-stop-loxp-mCherry-EGFP-Map1lc3a-WPRE-polyA expression cassette was inserted into the Rosa26 gene locus by homologous recombination. Map1lc3a, also known as LC3, is a widely expressed autophagic vesicle-specific marker. There was no abnormality in heterozygous mice. The presence of the loxp-stop-loxp expression cassette prevented the transcription of the downstream target gene LC3. After mating with Cre mice, LC3 gene is driven by the CAG promoter to express mCherry and EGFP in a pH-dependent manner in phagocytic cells after ischemic injury in the progeny double positive mice. The two co-expressed fluorescent signals vary depending on the acidic environment of the autophagic vesicles within the cell. mCherry is stable in an acidic environment (pKa 4.5), and quenching occurs in the acidic environment (pKa 5.9) of EGFP in lysosomes. In the autophagy vesicles with higher pH, the fluorescence of GFP and mCherry superimposed on yellow fluorescence; while in the lower pH lysosome, EGFP was quenched and only red fluorescence signal was detected. It can be used to label and track LC3 and study the origin, progression and disappearance of autophagy in various tissues after ischemic injury.

Mice

hLAG3

Strain Name:B6.129S-Lag3tm1(hLAG3)Smoc
Strain State:Embryo cryopreservation | Cat. NO.:NM-HU-00049

The endogenous mouse Lag3 gene exon1-7 was replaced by human LAG3 gene extracellular region by homologous recombination.

Mice

Apob-Q1388H

Strain Name:C57BL/6Smoc-Apobem1(Q1388H)Smoc
Strain State:Embryo cryopreservation | Cat. NO.:NM-KI-00056

These mice carry a c.g4164t mutation in Apob gene via CRISPR/Cas mediated recombination.

Mice

Ldlr-C223R

Strain Name:C57BL/6Smoc-Ldlrem1(C223R)Smoc
Strain State:Embryo cryopreservation | Cat. NO.:NM-KI-00043

These mice carry a C223R mutation in Ldlr gene via CRISPR/Cas mediated recombination.

Mice

hGLP1R

Strain Name:C57BL/6Smoc-Glp1rem2(hGLP1R)Smoc
Strain State:Repository Live | Cat. NO.:NM-HU-200220

The endogenous mouse Glp1r gene was completely or partially replaced by human hGLP1R gene via CRISPR/Cas9 mediated recombination.

Mice

hPSGL-1(2)

Strain Name:C57BL/6Smoc-Selplgem2(hSELPLG)Smoc
Strain State:Embryo cryopreservation | Cat. NO.:NM-HU-210026

The endogenous mice Selplg gene was completely or partially replaced by human SELPLG gene via CRISPR/Cas9 mediated recombination.

Mice

hLILRB4

Strain Name:C57BL/6Smoc-Lilrb4aem1(hLILRB4 )Smoc
Strain State:Embryo cryopreservation | Cat. NO.:NM-HU-210024

The endogenous mice Lilrb4a gene was completely or partially replaced by human LILRB4 gene via CRISPR/Cas9 mediated recombination.

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